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P-糖蛋白对烯胺酮类抗惊厥药药代动力学及组织分布的影响:群体和生理学方法分析

Effect of P-glycoprotein on the pharmacokinetics and tissue distribution of enaminone anticonvulsants: analysis by population and physiological approaches.

作者信息

Cox Donna S, Scott Kenneth R, Gao Huanling, Eddington Natalie D

机构信息

Pharmacokinetics Biopharmaceutics Laboratory, Department of Pharmaceutical Sciences, School of Pharmacy, University of Maryland, 100 Penn Street, Baltimore, MD 21201, USA.

出版信息

J Pharmacol Exp Ther. 2002 Sep;302(3):1096-104. doi: 10.1124/jpet.102.035436.

Abstract

Multidrug resistance (MDR), mediated by P-glycoprotein (Pgp) has been identified as altering the disposition of structurally diverse compounds. Previous in vitro studies in bovine brain microvascular endothelial cells and MCF/Adr [Adriamycin (doxorubicin)-resistant human breast cancer] cells displayed that the transport of enaminone anticonvulsants was influenced by Pgp. Therefore the objectives of this study was to further evaluate the influence of Pgp on the pharmacokinetics and tissue distribution of the enaminone analogs. mdr1ab (+/+) and mdr1ab (-/-) male mice (20 +/- 5 g) were administered DM5 (methyl 4-[(4'-chlorophenyl)amino]-6-methyl-2-oxo-3-cyclohexene-1-carboxylate) or DM44 (12.5 mg/kg, i.v.). Cohorts (n = 3) were sacrificed over a 12-h period, and samples were analyzed by a validated UV-high performance liquid chromatography assay method. Population analysis was used to estimate pharmacokinetic parameters and partition coefficients were determined for tissues. The clearance (0.51 versus 0.33 l/h/kg) and V(d) (1.25 versus 0.93 l/kg) of DM5 were found to be higher (p < 0.05), however the area under the curve (26.1 versus 38.2 microg/ml. h) was lower (p < 0.05) in mdr1a/1b (-/-) versus mdr1a/1b (+/+) mice, respectively. Similar findings were observed for DM44. Tissues known to express Pgp such as the heart, liver, lung, and brain displayed 2-fold or higher tissue levels in mdr1a/1b (-/-) versus mdr1a/1b (+/+) mice. These results strongly suggest that Pgp may influence enaminone tissue distribution and pharmacokinetics and may play a significant role in the effective treatment of epilepsy with these analogs.

摘要

由P-糖蛋白(Pgp)介导的多药耐药性(MDR)已被确定为会改变结构多样化合物的处置。先前在牛脑微血管内皮细胞和MCF/Adr [阿霉素(多柔比星)耐药的人乳腺癌]细胞中的体外研究表明,烯胺酮类抗惊厥药的转运受Pgp影响。因此,本研究的目的是进一步评估Pgp对烯胺酮类似物药代动力学和组织分布的影响。给mdr1ab(+/+)和mdr1ab(-/-)雄性小鼠(20±5 g)静脉注射DM5(4-[(4'-氯苯基)氨基]-6-甲基-2-氧代-3-环己烯-1-羧酸甲酯)或DM44(12.5 mg/kg)。在12小时内处死几组小鼠(每组n = 3),并通过经过验证的紫外-高效液相色谱分析方法对样本进行分析。采用群体分析法估算药代动力学参数,并测定组织的分配系数。发现DM5在mdr1a/1b(-/-)小鼠中的清除率(分别为0.51与0.33 l/h/kg)和分布容积(分别为1.25与0.93 l/kg)更高(p < 0.05),然而其曲线下面积(分别为26.1与38.2 μg/ml·h)在mdr1a/1b(-/-)小鼠中比mdr1a/1b(+/+)小鼠更低(p < 0.05)。DM44也观察到类似结果。已知表达Pgp的组织,如心脏、肝脏、肺和脑,在mdr1a/1b(-/-)小鼠中的组织水平比mdr1a/1b(+/+)小鼠高2倍或更高。这些结果强烈表明,Pgp可能影响烯胺酮的组织分布和药代动力学,并且可能在使用这些类似物有效治疗癫痫中发挥重要作用。

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